Диссертация (1145323), страница 44
Текст из файла (страница 44)
B. — 2009. — Vol. 79. — P. 045407.[261] Marko Kralj, Ivo Pletikosić, Marin Petrović, Petar Pervan, Milorad Milun, Alpha T. N’Diaye,Carsten Busse, Thomas Michely, Jun Fujii, Ivana Vobornik. Graphene on Ir(111) characterizedby angle-resolved photoemission // Phys. Rev. B. — 2011. — Vol. 84. — P.
075427.[262] Elena Starodub, Aaron Bostwick, Luca Moreschini, Shu Nie, Farid El Gabaly, Kevin F. McCarty,Eli Rotenberg. In-plane orientation effects on the electronic structure, stability, and Ramanscattering of monolayer graphene on Ir(111) // Phys. Rev. B. — 2011. — Vol. 83. — P. 125428.[263] Fabrizio Orlando, Rosanna Larciprete, Paolo Lacovig, Ilan Boscarato, Alessandro Baraldi,Silvano Lizzit. Epitaxial Growth of Hexagonal Boron Nitride on Ir(111) // J. Phys.
Chem. C. —2012. — Vol. 116. — Pp. 157–164.252[264] Gedeng Ruan, Zhengzong Sun, Zhiwei Peng, James M. Tour. Growth of Graphene from Food,Insects, and Waste // ACS Nano. — 2011. — Vol. 5. — Pp. 7601–7607.[265] Yoshisato Kimura, Kaoru Iida, Fu-Gao Wei, Yoshinao Mishima. Phase equilibria in the T–Al–C(T: Co, Ni, Rh, Ir) and T–Al–B (T: Rh, Ir) systems for the design of E21 –Co3 AlC based heatresistant alloys // Intermetallics. — 2006.
— Vol. 14. — Pp. 508–514.[266] H. Hattab, A. T. N’Diaye, D. Wall, G. Jnawali, J. Coraux, C. Busse, R. van Gastel, B. Poelsema,T. Michely, F.-J. Meyer zu Heringdorf, M. Horn von Hoegen. Growth temperature dependentgraphene alignment on Ir(111) // Appl. Phys. Lett. — 2011. — Vol. 98. — P. 141903.[267] Robert Laskowski, Peter Blaha, Karlheinz Schwarz. Bonding of hexagonal BN to transitionmetal surfaces: An ab initio density-functional theory study // Phys. Rev.
B. — 2008. — Vol. 78. —P. 045409.[268] S. Rusponi, M. Papagno, P. Moras, S. Vlaic, M. Etzkorn, P. M. Sheverdyaeva, D. Pacilé, H. Brune,C. Carbone. Highly Anisotropic Dirac Cones in Epitaxial Graphene Modulated by an IslandSuperlattice // Phys. Rev. Lett. — 2010. — Vol. 105. — P. 246803.[269] J. Voit, L. Perfetti, F. Zwick, H. Berger, G. Margaritondo, G. Grüner, H.
Höchst, M. Grioni.Electronic Structure of Solids with Competing Periodic Potentials // Science. — 2000. — Vol.290. — Pp. 501–503.[270] W. Bardyszewski, L. Hedin. A New Approach to the Theory of Photoemission from Solids //Phys. Scripta. — 1985. — Vol. 32. — Pp. 439–450.[271] J. W. Gadzuk.
Surface molecules and chemisorption. II. Photoemission angular distributions //Phys. Rev. B. — 1974. — Vol. 10. — Pp. 5030–5044.[272] M. Mucha-Kruczyński, O. Tsyplyatyev, A. Grishin, E. McCann, Vladimir I. Fal’ko, Aaron Bostwick, Eli Rotenberg. Characterization of graphene through anisotropy of constant-energy mapsin angle-resolved photoemission // Phys. Rev. B. — 2008. — Vol. 77. — P. 195403.[273] Satoru Masubuchi, Sei Morikawa, Masahiro Onuki, Kazuyuki Iguchi, Kenji Watanabe, TakashiTaniguchi, Tomoki Machida. Fabrication and Characterization of High-Mobility Graphene p–n–pJunctions Encapsulated by Hexagonal Boron Nitride // Jpn. J.
Appl. Phys. — 2013. — Vol. 52. —P. 110105.253[274] P. J. Zomer, S. P. Dash, N. Tombros, B. J. van Wees. A transfer technique for high mobilitygraphene devices on commercially available hexagonal boron nitride // Appl. Phys. Lett. —2011. — Vol. 99. — P. 232104.[275] Da Zhan, Jiaxu Yan, Linfei Lai, Zhenhua Ni, Lei Liu, Zexiang Shen. Engineering the ElectronicStructure of Graphene // Adv. Mater.
— 2012. — Vol. 24. — Pp. 4055–4069.[276] D. Haberer, D. V. Vyalikh, S. Taioli, B. Dora, M. Farjam, J. Fink, D. Marchenko, T. Pichler,K. Ziegler, S. Simonucci, M. S. Dresselhaus, M. Knupfer, B. Büchner, A. Grüneis. TunableBand Gap in Hydrogenated Quasi-Free-Standing Graphene // Nano Lett. — 2010. — Vol.
10. —Pp. 3360–3366.[277] W. J. Gammon, O. Kraft, A. C. Reillya, B. C. Holloway. Experimental comparison of N(1s)X-ray photoelectron spectroscopy binding energies of hard and elastic amorphous carbon nitridefilms with reference organic compounds // Carbon. — 2003.
— Vol. 41. — Pp. 1917–1923.[278] J. R. Pels, F. Kapteijn, J. A. Moulijn, Q. Zhu, K. M. Thomas. Evolution of nitogen functionalitiesin carbonaceous materials during pyrolysis // Carbon. — 1995. — Vol. 33. — Pp. 1641–1653.[279] Yasuhiro Yamada, Jungpil Kim, Shintaro Matsuo, Satoshi Sato.
Nitrogen-Containing GrapheneAnalyzed by X-ray Photoelectron Spectroscopy // Carbon. — 2014. — Vol. 70. — Pp. 59–74.[280] J. M. Ripalda, E. Román, N. Dı́az, L. Galán, I. Montero, G. Comelli, A. Baraldi, S. Lizzit,A. Goldoni, G. Paolucci. Correlation of X-ray absorption and X-ray photoemission spectroscopies in amorphous carbon nitride // Phys. Rev. B. — 1999. — Vol. 60.
— Pp. R3705–R3708.[281] Iwao Shimoyama, Guohua Wu, Tetsuhiro Sekiguchi, Yuji Baba. Evidence for the existence ofnitrogen-substituted graphite structure by polarization dependence of near-edge X-ray-absorptionfine structure // Phys. Rev. B. — 2000. — Vol. 62. — Pp.
R6053–R6056.[282] Hideharu Niwa, Koji Horiba, Yoshihisa Harada, Masaharu Oshima, Takashi Ikeda, KiyoyukiTerakura, Jun-ichi Ozaki, Seizo Miyata. X-ray absorption analysis of nitrogen contribution tooxygen reduction reaction in carbon alloy cathode catalysts for polymer electrolyte fuel cells //J. Power Sources.
— 2009. — Vol. 187. — Pp. 93–97.[283] Hyun Chul Choi, Jeunghee Park, Bongsoo Kim. Distribution and Structure of N Atoms inMultiwalled Carbon Nanotubes Using Variable-Energy X-Ray Photoelectron Spectroscopy // J.Phys. Chem. B. — 2005. — Vol. 109. — Pp. 4333–4340.254[284] Peter Jacobson, Bernhard Stöger, Andreas Garhofer, Gareth S. Parkinson, Michael Schmid,Roman Caudillo, Florian Mittendorfer, Josef Redinger, Ulrike Diebold.
Disorder and DefectHealing in Graphene on Ni(111) // J. Phys. Chem. Lett. — 2012. — Vol. 3. — Pp. 136–139.[285] Takeshi Fujita, Pengfei Guan, Keith McKenna, Xingyou Lang, Akihiko Hirata, Ling Zhang,Tomoharu Tokunaga, Shigeo Arai, Yuta Yamamoto, Nobuo Tanaka, Yoshifumi Ishikawa, Naoki Asao, Yoshinori Yamamoto, Jonah Erlebacher, Mingwei Chen. Atomic origins of the highcatalytic activity of nanoporous gold // Nat.
Mater. — 2012. — Vol. 11. — Pp. 775–780.[286] Yusuke Mikami, Amarajothi Dhakshinamoorthy, Mercedes Alvaro, Hermenegildo Garcia. Catalytic activity of unsupported gold nanoparticles // Catal. Sci. Technol. — 2013. — Vol. 3. —Pp. 58–69.[287] Xiaochun Zhou, Weilin Xu, Guokun Liu, Debashis Panda, Peng Chen. Size-Dependent CatalyticActivity and Dynamics of Gold Nanoparticles at the Single-Molecule Level // J. Am. Chem.Soc. — 2010. — Vol. 132.
— Pp. 138–146.[288] G. Giovannetti, P. A. Khomyakov, G. Brocks, V. M. Karpan, J. van den Brink, P. J. Kelly. Dopinggraphene with metal contacts // Phys. Rev. Lett. — 2008. — Vol. 101. — P. 026803.[289] A. Gabriel, C. Chatillon, I. Ansara. Thermochemical and phase-diagram analysis of the Ni-C,Co-C, and Co-Ni-C systems // High Temp.
Sci. — 1988. — Vol. 25. — Pp. 17–54.[290] B R K Nanda, M Sherafati, Z S Popović, S Satpathy. Electronic structure of the substitutionalvacancy in graphene: density-functional and Green’s function studies // New J. Phys. — 2013. —Vol. 15. — P. 039501.[291] Tianru Wu, Honglie Shen, Lei Sun, Bin Cheng, Bin Liu, Jiancang Shen.
Nitrogen and BoronDoped Monolayer Graphene by Chemical Vapor Deposition Using Polystyrene, Urea and BoricAcid // New J. Chem. — 2012. — Vol. 36. — Pp. 1385–1391.[292] D. Pacilé, S. Lisi, I. Di Bernardo, M. Papagno, L. Ferrari, M. Pisarra, M. Caputo, S. K. Mahatha,P. M. Sheverdyaeva, P. Moras, P.
Lacovig, S. Lizzit, A. Baraldi, M. G. Betti, C. Carbone.Electronic Structure of Graphene/Co Interfaces // Phys. Rev. B. — 2014. — Vol. 90. — P. 195446.[293] V.K. Alimov, D.B. Bogomolov, M.N. Churaeva, A.E. Gorodetsky, S.L. Kanashenko, A.I. Kanaev,S.Y. Rybakov, V.M. Sharapov, A.P. Zakharov, R.K. Zalavutdinov, O.I. Buzhinsky, A.P. Chernobay,S.A. Grashin, S.V. Mirnov, V.I. Bregadze, A.Y.
Usyatinsky. Characterization of a-B/C:H Films255Deposited From Different Boron Containing Precursors // J. Nucl. Mater. — 1992. — Vol. 196. —Pp. 670–675.[294] Pinshane Y. Huang, Carlos S. Ruiz-Vargas, Arend M. van der Zande, William S. Whitney, Mark P.Levendorf, Joshua W. Kevek, Shivank Garg, Jonathan S. Alden, Caleb J. Hustedt, Ye Zhu, JiwoongPark, Paul L. McEuen, David A. Muller. Grains and Grain Boundaries in Single-Layer GrapheneAtomic Patchwork Quilts // Nature.
— 2011. — Vol. 469. — Pp. 389–392.[295] L. V. Dzemiantsova, M. Karolak, F. Lofink, A. Kubetzka, B. Sachs, K. von Bergmann, S. Hankemeier, T. O. Wehling, R. Frömter, H. P. Oepen, A. I. Lichtenstein, R. Wiesendanger. MultiscaleMagnetic Study of Ni(111) and Graphene on Ni(111) // Phys. Rev.
B. — 2011. — Vol. 84. —P. 205431.[296] Liuyan Zhao, Mark Levendorf, Scott Goncher, Theanne Schiros, Lucia Pálová, Amir Zabet-Khosousi, Kwang Taeg Rim, Christopher Gutiérrez, Dennis Nordlund, Cherno Jaye, MarkHybertsen, David Reichman, George W. Flynn, Jiwoong Park, Abhay N. Pasupathy. Local Atomic and Electronic Structure of Boron Chemical Doping in Monolayer Graphene // Nano Lett. —2013. — Vol.
13. — Pp. 4659–4665.[297] Frédéric Joucken, Yann Tison, Jérôme Lagoute, Jacques Dumont, Damien Cabosart, Bing Zheng,Vincent Repain, Cyril Chacon, Yann Girard, Andrés Rafael Botello-Méndez, Sylvie Rousset,Robert Sporken, Jean-Christophe Charlier, Luc Henrard. Localized State and Charge Transferin Nitrogen-Doped Graphene // Phys. Rev.
B. — 2012. — Vol. 85. — P. 161408.[298] Wen Wan, Hui Li, Han Huang, Swee Liang Wong, Lu Lv, Yongli Gao, Andrew Thye ShenWee. Incorporating Isolated Molybdenum (Mo) Atoms into Bilayer Epitaxial Graphene on4H-SiC(0001) // ACS Nano.
— 2014. — Vol. 8. — Pp. 970–976.[299] Bing Zheng, Patrick Hermet, Luc Henrard. Scanning Tunneling Microscopy Simulations ofNitrogen- and Boron-Doped Graphene and Single-Walled Carbon Nanotubes // ACS Nano. —2010. — Vol. 4. — Pp. 4165—-4173.[300] G. Savini, A. C. Ferrari, Feliciano Giustino. First-Principles Prediction of Doped Graphane asa High-Temperature Electron-Phonon Superconductor // Phys. Rev. Lett. — 2010.
— Vol. 105. —P. 037002.[301] Jorge O. Sofo, Ajay S. Chaudhari, Greg D. Barber. Graphane: A two-dimensional hydrocarbon //Phys. Rev. B. — 2007. — Vol. 75. — P. 153401.256[302] M.Z.S. Flores, P.A.S. Autreto, S.B. Legoas, D.S. Galvao. Graphene to graphane: a theoreticalstudy // Nanotechnol. — 2009. — Vol. 20.
— P. 465704.[303] Cheol-Hwan Park, Feliciano Giustino, Marvin L. Cohen, Steven G. Louie. Velocity Renormalization and Carrier Lifetime in Graphene from the Electron-Phonon Interaction // Phys. Rev.Lett. — 2007. — Vol. 99. — P. 086804.[304] K. M.